首页> 外文期刊>Chronobiology international >Endothelial nitric oxide is not involved in circadian rhythm generation of blood pressure: Experiments in wild-type C57 and eNOS knock-out mice under light-dark and free-run conditions
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Endothelial nitric oxide is not involved in circadian rhythm generation of blood pressure: Experiments in wild-type C57 and eNOS knock-out mice under light-dark and free-run conditions

机译:内皮一氧化氮不参与昼夜节律的血压生成:在明暗和自由运行条件下在野生型C57和eNOS基因敲除小鼠中进行的实验

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Endothelial nitric oxide synthase knock out mice (eNOS-/-) are mildly hypertensive in comparison to wild-type (WT) mice. Hypertension in eNOS-/- mice is partly the result of an increase in peripheral resistance due to the absence of the vasodilatory action of NO. No data are available for these animals regarding the 24 h blood pressure profile under the 12:12 h light-dark cycle (LD) and constant dark (DD) conditions. Therefore, this study aimed to investigate by rachotelemetry the circadian rhythms in systolic blood pressure (SBP) and diastolic blood pressure (DBP) of six eNOS-/- mice and five wild-type mice under LD and DD. Data were collected beginning 3 wks after operation (implantation of sensor) for 2 wks under LD and for another 2 wks thereafter under DD. Our results show that eNOS-/- mice were hypertensive under all experimental conditions. SBP and DBP were significantly higher by about 15% in eNOS-/- mice. No differences were found in the pattern of the circadian rhythms, rhythmicity, or period lengths during LD or DD. The genetic deletion of eNOS seems to lead to higher SBP and DBP, but the circadian blood pressure pattern is still preserved with higher values during the night (active phase) and lower values during the daytime (rest phase). Thus, endothelial-derived NO plays an important role in the regulation of vascular tone and haemodynamics, but it is not important for the circadian organization of SBP and DBP. (Author correspondence: bjoern. lemmer@pharmtox.uni-heidelberg.de).
机译:与野生型(WT)小鼠相比,内皮一氧化氮合酶敲除小鼠(eNOS-/-)轻度高血压。 eNOS-/-小鼠中的高血压部分是由于缺乏NO的血管舒张作用导致外周抵抗力增加的结果。对于这些动物,在12:12小时的明暗循环(LD)和恒定的黑暗(DD)条件下,没有24小时血压分布的数据。因此,本研究旨在通过腔镜法研究六只eNOS-/-小鼠和五只野生型小鼠在LD和DD下的收缩压(SBP)和舒张压(DBP)的昼夜节律。在手术(植入传感器)后3周开始收集数据,在LD下2周,在DD下另外2周。我们的结果表明,eNOS-/-小鼠在所有实验条件下均为高血压。在eNOS-/-小鼠中,SBP和DBP明显升高了约15%。在LD或DD期间,昼夜节律,节律或周期长度的模式没有发现差异。 eNOS的基因缺失似乎导致较高的SBP和DBP,但昼夜血压模式仍保持较高的水平(夜间(活动阶段),较低的白天(休息阶段))。因此,内皮源性NO在调节血管张力和血流动力学中起重要作用,但对于SBP和DBP的昼夜节律组织并不重要。 (作者来信:bjoern。lemmer@pharmtox.uni-heidelberg.de)。

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